09330009858 Allicdata Electronics
Allicdata Part #:

1195-5641-ND

Manufacturer Part#:

09330009858

Price: $ 4.92
Product Category:

Connectors, Interconnects

Manufacturer: HARTING
Short Description: JUMPER ACROSS 1X8 BLACK 16A
More Detail: 8 (1 x 8) Position Shunt Connector Black Insulated...
DataSheet: 09330009858 datasheet09330009858 Datasheet/PDF
Quantity: 78
1 +: $ 4.47300
10 +: $ 4.28904
25 +: $ 3.91608
50 +: $ 3.72960
100 +: $ 3.54312
250 +: $ 3.17016
500 +: $ 2.98368
1000 +: $ 2.61072
Stock 78Can Ship Immediately
$ 4.92
Specifications
Series: Han® ES Press
Packaging: --
Part Status: Active
Type: Insulated
Gender: Male Pins
Number of Positions or Pins (Grid): 8 (1 x 8)
Pitch: 0.264" (6.70mm)
Height: 0.445" (11.30mm)
Contact Finish: Tin
Contact Finish Thickness: 118.1µin (3.00µm)
Color: Black
Description

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A shunt resistor, also known as a shunt, is a type of electrical component that connects two points in a circuit in order to provide a smoother current flow or reduce electrical interference. These types of resistors are also referred to as “jumpers” or “shunts.” They are used in applications such as recording equipment, audio-signal distributors, and signal conditioning electronics.

A shunt resistor is typically made of two pieces of metal, often copper or aluminum, and a resistor sleeve or jacket. They have two external connections: one for the incoming signal and the other for the outgoing signal. Shunts are attached to the incoming and outgoing conductors in order to create a low-impedance electrical connection. This provides an efficient way to connect the two conductors without any voltage drop.

The working principle of a shunt resistor is fairly straightforward. As current passes through the resistor, a voltage drop occurs between the two external connections. This voltage drop is proportional to the magnitude of the current passing through the resistor, meaning that higher current will create higher voltage drops. The voltage drop created by the shunt resistor is typically much less than that of a regular resistor, allowing more current to pass through it without creating an excessive voltage drop.

Shunts are commonly used in a variety of applications, including power distribution systems, audio signal processors, and signal conditioning electronics. They can be used to bypass current in situations where regulation or control is not necessary, such as in the case of high-voltage power distribution. Shunts can also be used for current-limiting purposes, such as when a sudden increase in current causes an overload in the system. In addition, shunt resistors can be used to add additional protection against electrical noise and interference.

In the case of 09330009858, this is a shunt-type resistor that is designed for use in signal conditioning electronics. It is characterized by high accuracy and low voltage drop, making it ideal for use in high-frequency applications. The shunt is constructed of two semiconductor layers, with the upper layer containing a sensing resistor and the lower layer containing a protective diode. The diode is placed between the two layers to prevent the external signal from interfering with the voltage drop of the resistor. This allows for accurate current measurements and noise filtering.

The working principle of 09330009858 is based on the voltage drop that occurs when current passes through the resistor. As the current increases, the voltage drop across the resistor increases, providing an accurate measurement of the current. In addition, the low voltage drop of the shunt ensures that noise and interference are kept to a minimum.

In conclusion, shunt resistors, also known as jumpers or shunts, are electrical components that are designed to provide a smoother current flow while reducing electrical interference. The 09330009858 is a shunt-type resistor that is designed for use in signal conditioning electronics, characterized by its high accuracy and low voltage drop. It works by causing a voltage drop between two external connections when current passes through it, allowing for accurate current measurements and noise filtering.

The specific data is subject to PDF, and the above content is for reference

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